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2f33fe86f5
* Update dependencies and build to go1.22 * Fix api changes wrt to dependencies * Update golangci config
433 lines
14 KiB
Go
433 lines
14 KiB
Go
// Copyright (c) 2021 Tulir Asokan
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//
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// This Source Code Form is subject to the terms of the Mozilla Public
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// License, v. 2.0. If a copy of the MPL was not distributed with this
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// file, You can obtain one at http://mozilla.org/MPL/2.0/.
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package whatsmeow
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import (
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"context"
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"crypto/hmac"
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"crypto/sha256"
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"encoding/binary"
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"fmt"
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"time"
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"go.mau.fi/libsignal/ecc"
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"go.mau.fi/libsignal/groups"
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"go.mau.fi/libsignal/keys/prekey"
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"go.mau.fi/libsignal/protocol"
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"google.golang.org/protobuf/proto"
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waBinary "go.mau.fi/whatsmeow/binary"
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"go.mau.fi/whatsmeow/binary/armadillo/waCommon"
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"go.mau.fi/whatsmeow/binary/armadillo/waConsumerApplication"
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"go.mau.fi/whatsmeow/binary/armadillo/waMsgApplication"
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"go.mau.fi/whatsmeow/binary/armadillo/waMsgTransport"
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waProto "go.mau.fi/whatsmeow/binary/proto"
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"go.mau.fi/whatsmeow/types"
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"go.mau.fi/whatsmeow/types/events"
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)
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// Number of sent messages to cache in memory for handling retry receipts.
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const recentMessagesSize = 256
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type recentMessageKey struct {
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To types.JID
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ID types.MessageID
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}
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type RecentMessage struct {
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wa *waProto.Message
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fb *waMsgApplication.MessageApplication
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}
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func (rm RecentMessage) IsEmpty() bool {
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return rm.wa == nil && rm.fb == nil
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}
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func (cli *Client) addRecentMessage(to types.JID, id types.MessageID, wa *waProto.Message, fb *waMsgApplication.MessageApplication) {
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cli.recentMessagesLock.Lock()
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key := recentMessageKey{to, id}
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if cli.recentMessagesList[cli.recentMessagesPtr].ID != "" {
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delete(cli.recentMessagesMap, cli.recentMessagesList[cli.recentMessagesPtr])
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}
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cli.recentMessagesMap[key] = RecentMessage{wa: wa, fb: fb}
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cli.recentMessagesList[cli.recentMessagesPtr] = key
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cli.recentMessagesPtr++
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if cli.recentMessagesPtr >= len(cli.recentMessagesList) {
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cli.recentMessagesPtr = 0
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}
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cli.recentMessagesLock.Unlock()
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}
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func (cli *Client) getRecentMessage(to types.JID, id types.MessageID) RecentMessage {
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cli.recentMessagesLock.RLock()
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msg, _ := cli.recentMessagesMap[recentMessageKey{to, id}]
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cli.recentMessagesLock.RUnlock()
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return msg
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}
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func (cli *Client) getMessageForRetry(receipt *events.Receipt, messageID types.MessageID) (RecentMessage, error) {
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msg := cli.getRecentMessage(receipt.Chat, messageID)
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if msg.IsEmpty() {
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waMsg := cli.GetMessageForRetry(receipt.Sender, receipt.Chat, messageID)
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if waMsg == nil {
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return RecentMessage{}, fmt.Errorf("couldn't find message %s", messageID)
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} else {
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cli.Log.Debugf("Found message in GetMessageForRetry to accept retry receipt for %s/%s from %s", receipt.Chat, messageID, receipt.Sender)
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}
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msg = RecentMessage{wa: waMsg}
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} else {
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cli.Log.Debugf("Found message in local cache to accept retry receipt for %s/%s from %s", receipt.Chat, messageID, receipt.Sender)
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}
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return msg, nil
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}
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const recreateSessionTimeout = 1 * time.Hour
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func (cli *Client) shouldRecreateSession(retryCount int, jid types.JID) (reason string, recreate bool) {
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cli.sessionRecreateHistoryLock.Lock()
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defer cli.sessionRecreateHistoryLock.Unlock()
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if !cli.Store.ContainsSession(jid.SignalAddress()) {
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cli.sessionRecreateHistory[jid] = time.Now()
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return "we don't have a Signal session with them", true
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} else if retryCount < 2 {
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return "", false
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}
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prevTime, ok := cli.sessionRecreateHistory[jid]
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if !ok || prevTime.Add(recreateSessionTimeout).Before(time.Now()) {
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cli.sessionRecreateHistory[jid] = time.Now()
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return "retry count > 1 and over an hour since last recreation", true
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}
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return "", false
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}
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type incomingRetryKey struct {
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jid types.JID
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messageID types.MessageID
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}
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// handleRetryReceipt handles an incoming retry receipt for an outgoing message.
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func (cli *Client) handleRetryReceipt(receipt *events.Receipt, node *waBinary.Node) error {
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retryChild, ok := node.GetOptionalChildByTag("retry")
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if !ok {
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return &ElementMissingError{Tag: "retry", In: "retry receipt"}
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}
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ag := retryChild.AttrGetter()
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messageID := ag.String("id")
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timestamp := ag.UnixTime("t")
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retryCount := ag.Int("count")
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if !ag.OK() {
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return ag.Error()
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}
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msg, err := cli.getMessageForRetry(receipt, messageID)
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if err != nil {
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return err
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}
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var fbConsumerMsg *waConsumerApplication.ConsumerApplication
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if msg.fb != nil {
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subProto, ok := msg.fb.GetPayload().GetSubProtocol().GetSubProtocol().(*waMsgApplication.MessageApplication_SubProtocolPayload_ConsumerMessage)
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if ok {
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fbConsumerMsg, err = subProto.Decode()
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if err != nil {
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return fmt.Errorf("failed to decode consumer message for retry: %w", err)
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}
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}
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}
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retryKey := incomingRetryKey{receipt.Sender, messageID}
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cli.incomingRetryRequestCounterLock.Lock()
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cli.incomingRetryRequestCounter[retryKey]++
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internalCounter := cli.incomingRetryRequestCounter[retryKey]
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cli.incomingRetryRequestCounterLock.Unlock()
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if internalCounter >= 10 {
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cli.Log.Warnf("Dropping retry request from %s for %s: internal retry counter is %d", messageID, receipt.Sender, internalCounter)
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return nil
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}
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ownID := cli.getOwnID()
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if ownID.IsEmpty() {
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return ErrNotLoggedIn
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}
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var fbSKDM *waMsgTransport.MessageTransport_Protocol_Ancillary_SenderKeyDistributionMessage
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var fbDSM *waMsgTransport.MessageTransport_Protocol_Integral_DeviceSentMessage
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if receipt.IsGroup {
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builder := groups.NewGroupSessionBuilder(cli.Store, pbSerializer)
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senderKeyName := protocol.NewSenderKeyName(receipt.Chat.String(), ownID.SignalAddress())
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signalSKDMessage, err := builder.Create(senderKeyName)
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if err != nil {
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cli.Log.Warnf("Failed to create sender key distribution message to include in retry of %s in %s to %s: %v", messageID, receipt.Chat, receipt.Sender, err)
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}
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if msg.wa != nil {
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msg.wa.SenderKeyDistributionMessage = &waProto.SenderKeyDistributionMessage{
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GroupId: proto.String(receipt.Chat.String()),
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AxolotlSenderKeyDistributionMessage: signalSKDMessage.Serialize(),
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}
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} else {
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fbSKDM = &waMsgTransport.MessageTransport_Protocol_Ancillary_SenderKeyDistributionMessage{
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GroupID: receipt.Chat.String(),
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AxolotlSenderKeyDistributionMessage: signalSKDMessage.Serialize(),
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}
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}
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} else if receipt.IsFromMe {
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if msg.wa != nil {
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msg.wa = &waProto.Message{
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DeviceSentMessage: &waProto.DeviceSentMessage{
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DestinationJid: proto.String(receipt.Chat.String()),
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Message: msg.wa,
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},
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}
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} else {
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fbDSM = &waMsgTransport.MessageTransport_Protocol_Integral_DeviceSentMessage{
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DestinationJID: receipt.Chat.String(),
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}
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}
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}
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// TODO pre-retry callback for fb
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if cli.PreRetryCallback != nil && !cli.PreRetryCallback(receipt, messageID, retryCount, msg.wa) {
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cli.Log.Debugf("Cancelled retry receipt in PreRetryCallback")
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return nil
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}
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var plaintext, frankingTag []byte
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if msg.wa != nil {
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plaintext, err = proto.Marshal(msg.wa)
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if err != nil {
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return fmt.Errorf("failed to marshal message: %w", err)
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}
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} else {
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plaintext, err = proto.Marshal(msg.fb)
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if err != nil {
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return fmt.Errorf("failed to marshal consumer message: %w", err)
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}
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frankingHash := hmac.New(sha256.New, msg.fb.GetMetadata().GetFrankingKey())
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frankingHash.Write(plaintext)
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frankingTag = frankingHash.Sum(nil)
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}
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_, hasKeys := node.GetOptionalChildByTag("keys")
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var bundle *prekey.Bundle
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if hasKeys {
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bundle, err = nodeToPreKeyBundle(uint32(receipt.Sender.Device), *node)
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if err != nil {
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return fmt.Errorf("failed to read prekey bundle in retry receipt: %w", err)
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}
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} else if reason, recreate := cli.shouldRecreateSession(retryCount, receipt.Sender); recreate {
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cli.Log.Debugf("Fetching prekeys for %s for handling retry receipt with no prekey bundle because %s", receipt.Sender, reason)
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var keys map[types.JID]preKeyResp
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keys, err = cli.fetchPreKeys(context.TODO(), []types.JID{receipt.Sender})
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if err != nil {
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return err
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}
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bundle, err = keys[receipt.Sender].bundle, keys[receipt.Sender].err
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if err != nil {
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return fmt.Errorf("failed to fetch prekeys: %w", err)
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} else if bundle == nil {
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return fmt.Errorf("didn't get prekey bundle for %s (response size: %d)", receipt.Sender, len(keys))
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}
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}
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encAttrs := waBinary.Attrs{}
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var msgAttrs messageAttrs
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if msg.wa != nil {
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msgAttrs.MediaType = getMediaTypeFromMessage(msg.wa)
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msgAttrs.Type = getTypeFromMessage(msg.wa)
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} else if fbConsumerMsg != nil {
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msgAttrs = getAttrsFromFBMessage(fbConsumerMsg)
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} else {
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msgAttrs.Type = "text"
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}
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if msgAttrs.MediaType != "" {
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encAttrs["mediatype"] = msgAttrs.MediaType
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}
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var encrypted *waBinary.Node
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var includeDeviceIdentity bool
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if msg.wa != nil {
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encrypted, includeDeviceIdentity, err = cli.encryptMessageForDevice(plaintext, receipt.Sender, bundle, encAttrs)
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} else {
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encrypted, err = cli.encryptMessageForDeviceV3(&waMsgTransport.MessageTransport_Payload{
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ApplicationPayload: &waCommon.SubProtocol{
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Payload: plaintext,
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Version: FBMessageApplicationVersion,
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},
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FutureProof: waCommon.FutureProofBehavior_PLACEHOLDER,
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}, fbSKDM, fbDSM, receipt.Sender, bundle, encAttrs)
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}
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if err != nil {
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return fmt.Errorf("failed to encrypt message for retry: %w", err)
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}
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encrypted.Attrs["count"] = retryCount
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attrs := waBinary.Attrs{
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"to": node.Attrs["from"],
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"type": msgAttrs.Type,
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"id": messageID,
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"t": timestamp.Unix(),
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}
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if !receipt.IsGroup {
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attrs["device_fanout"] = false
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}
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if participant, ok := node.Attrs["participant"]; ok {
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attrs["participant"] = participant
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}
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if recipient, ok := node.Attrs["recipient"]; ok {
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attrs["recipient"] = recipient
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}
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if edit, ok := node.Attrs["edit"]; ok {
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attrs["edit"] = edit
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}
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var content []waBinary.Node
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if msg.wa != nil {
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content = cli.getMessageContent(*encrypted, msg.wa, attrs, includeDeviceIdentity)
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} else {
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content = []waBinary.Node{
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*encrypted,
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{Tag: "franking", Content: []waBinary.Node{{Tag: "franking_tag", Content: frankingTag}}},
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}
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}
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err = cli.sendNode(waBinary.Node{
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Tag: "message",
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Attrs: attrs,
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Content: content,
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})
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if err != nil {
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return fmt.Errorf("failed to send retry message: %w", err)
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}
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cli.Log.Debugf("Sent retry #%d for %s/%s to %s", retryCount, receipt.Chat, messageID, receipt.Sender)
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return nil
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}
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func (cli *Client) cancelDelayedRequestFromPhone(msgID types.MessageID) {
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if !cli.AutomaticMessageRerequestFromPhone || cli.MessengerConfig != nil {
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return
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}
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cli.pendingPhoneRerequestsLock.RLock()
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cancelPendingRequest, ok := cli.pendingPhoneRerequests[msgID]
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if ok {
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cancelPendingRequest()
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}
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cli.pendingPhoneRerequestsLock.RUnlock()
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}
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// RequestFromPhoneDelay specifies how long to wait for the sender to resend the message before requesting from your phone.
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// This is only used if Client.AutomaticMessageRerequestFromPhone is true.
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var RequestFromPhoneDelay = 5 * time.Second
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func (cli *Client) delayedRequestMessageFromPhone(info *types.MessageInfo) {
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if !cli.AutomaticMessageRerequestFromPhone || cli.MessengerConfig != nil {
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return
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}
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cli.pendingPhoneRerequestsLock.Lock()
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_, alreadyRequesting := cli.pendingPhoneRerequests[info.ID]
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if alreadyRequesting {
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cli.pendingPhoneRerequestsLock.Unlock()
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return
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}
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ctx, cancel := context.WithCancel(context.Background())
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defer cancel()
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cli.pendingPhoneRerequests[info.ID] = cancel
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cli.pendingPhoneRerequestsLock.Unlock()
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defer func() {
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cli.pendingPhoneRerequestsLock.Lock()
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delete(cli.pendingPhoneRerequests, info.ID)
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cli.pendingPhoneRerequestsLock.Unlock()
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}()
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select {
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case <-time.After(RequestFromPhoneDelay):
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case <-ctx.Done():
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cli.Log.Debugf("Cancelled delayed request for message %s from phone", info.ID)
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return
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}
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_, err := cli.SendMessage(
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ctx,
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cli.getOwnID().ToNonAD(),
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cli.BuildUnavailableMessageRequest(info.Chat, info.Sender, info.ID),
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SendRequestExtra{Peer: true},
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)
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if err != nil {
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cli.Log.Warnf("Failed to send request for unavailable message %s to phone: %v", info.ID, err)
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} else {
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cli.Log.Debugf("Requested message %s from phone", info.ID)
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}
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}
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// sendRetryReceipt sends a retry receipt for an incoming message.
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func (cli *Client) sendRetryReceipt(node *waBinary.Node, info *types.MessageInfo, forceIncludeIdentity bool) {
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id, _ := node.Attrs["id"].(string)
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children := node.GetChildren()
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var retryCountInMsg int
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if len(children) == 1 && children[0].Tag == "enc" {
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retryCountInMsg = children[0].AttrGetter().OptionalInt("count")
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}
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cli.messageRetriesLock.Lock()
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cli.messageRetries[id]++
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retryCount := cli.messageRetries[id]
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// In case the message is a retry response, and we restarted in between, find the count from the message
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if retryCount == 1 && retryCountInMsg > 0 {
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retryCount = retryCountInMsg + 1
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cli.messageRetries[id] = retryCount
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}
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cli.messageRetriesLock.Unlock()
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if retryCount >= 5 {
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cli.Log.Warnf("Not sending any more retry receipts for %s", id)
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return
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}
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if retryCount == 1 {
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go cli.delayedRequestMessageFromPhone(info)
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}
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var registrationIDBytes [4]byte
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binary.BigEndian.PutUint32(registrationIDBytes[:], cli.Store.RegistrationID)
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attrs := waBinary.Attrs{
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"id": id,
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"type": "retry",
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"to": node.Attrs["from"],
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}
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if recipient, ok := node.Attrs["recipient"]; ok {
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attrs["recipient"] = recipient
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}
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if participant, ok := node.Attrs["participant"]; ok {
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attrs["participant"] = participant
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}
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payload := waBinary.Node{
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Tag: "receipt",
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Attrs: attrs,
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Content: []waBinary.Node{
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{Tag: "retry", Attrs: waBinary.Attrs{
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"count": retryCount,
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"id": id,
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"t": node.Attrs["t"],
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"v": 1,
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}},
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{Tag: "registration", Content: registrationIDBytes[:]},
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},
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}
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if retryCount > 1 || forceIncludeIdentity {
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if key, err := cli.Store.PreKeys.GenOnePreKey(); err != nil {
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cli.Log.Errorf("Failed to get prekey for retry receipt: %v", err)
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} else if deviceIdentity, err := proto.Marshal(cli.Store.Account); err != nil {
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cli.Log.Errorf("Failed to marshal account info: %v", err)
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return
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} else {
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payload.Content = append(payload.GetChildren(), waBinary.Node{
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Tag: "keys",
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Content: []waBinary.Node{
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{Tag: "type", Content: []byte{ecc.DjbType}},
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{Tag: "identity", Content: cli.Store.IdentityKey.Pub[:]},
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preKeyToNode(key),
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preKeyToNode(cli.Store.SignedPreKey),
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{Tag: "device-identity", Content: deviceIdentity},
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},
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})
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}
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}
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err := cli.sendNode(payload)
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if err != nil {
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cli.Log.Errorf("Failed to send retry receipt for %s: %v", id, err)
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}
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}
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